Attempt to ensure that everything passed to connection_fatal() is
[u/mdw/putty] / winnet.c
1 /*
2 * Windows networking abstraction.
3 *
4 * Due to this clean abstraction it was possible
5 * to easily implement IPv6 support :)
6 *
7 * IPv6 patch 1 (27 October 2000) Jeroen Massar <jeroen@unfix.org>
8 * - Preliminary hacked IPv6 support.
9 * - Connecting to IPv6 address (eg fec0:4242:4242:100:2d0:b7ff:fe8f:5d42) works.
10 * - Connecting to IPv6 hostname (eg heaven.ipv6.unfix.org) works.
11 * - Compiles as either IPv4 or IPv6.
12 *
13 * IPv6 patch 2 (29 October 2000) Jeroen Massar <jeroen@unfix.org>
14 * - When compiled as IPv6 it also allows connecting to IPv4 hosts.
15 * - Added some more documentation.
16 *
17 * IPv6 patch 3 (18 November 2000) Jeroen Massar <jeroen@unfix.org>
18 * - It now supports dynamically loading the IPv6 resolver dll's.
19 * This way we should be able to distribute one (1) binary
20 * which supports both IPv4 and IPv6.
21 * - getaddrinfo() and getnameinfo() are loaded dynamicaly if possible.
22 * - in6addr_any is defined in this file so we don't need to link to wship6.lib
23 * - The patch is now more unified so that we can still
24 * remove all IPv6 support by undef'ing IPV6.
25 * But where it fallsback to IPv4 it uses the IPv4 code which is already in place...
26 * - Canonical name resolving works.
27 *
28 * IPv6 patch 4 (07 January 2001) Jeroen Massar <jeroen@unfix.org>
29 * - patch against CVS of today, will be submitted to the bugs list
30 * as a 'cvs diff -u' on Simon's request...
31 *
32 */
33
34 /*
35 * Define IPV6 to have IPv6 on-the-fly-loading support.
36 * This means that one doesn't have to have an IPv6 stack to use it.
37 * But if an IPv6 stack is found it is used with a fallback to IPv4.
38 */
39 /* #define IPV6 1 */
40
41 #ifdef IPV6
42 #include <winsock2.h>
43 #include <ws2tcpip.h>
44 #include <tpipv6.h>
45 #else
46 #include <winsock.h>
47 #endif
48 #include <windows.h>
49 #include <stdio.h>
50 #include <stdlib.h>
51 #include <assert.h>
52
53 #define DEFINE_PLUG_METHOD_MACROS
54 #include "putty.h"
55 #include "network.h"
56 #include "tree234.h"
57
58 struct Socket_tag {
59 struct socket_function_table *fn;
60 /* the above variable absolutely *must* be the first in this structure */
61 char *error;
62 SOCKET s;
63 Plug plug;
64 void *private_ptr;
65 bufchain output_data;
66 int connected;
67 int writable;
68 int frozen; /* this causes readability notifications to be ignored */
69 int frozen_readable; /* this means we missed at least one readability
70 * notification while we were frozen */
71 int localhost_only; /* for listening sockets */
72 char oobdata[1];
73 int sending_oob;
74 int oobinline;
75 int pending_error; /* in case send() returns error */
76 };
77
78 /*
79 * We used to typedef struct Socket_tag *Socket.
80 *
81 * Since we have made the networking abstraction slightly more
82 * abstract, Socket no longer means a tcp socket (it could mean
83 * an ssl socket). So now we must use Actual_Socket when we know
84 * we are talking about a tcp socket.
85 */
86 typedef struct Socket_tag *Actual_Socket;
87
88 struct SockAddr_tag {
89 char *error;
90 /* address family this belongs to, AF_INET for IPv4, AF_INET6 for IPv6. */
91 int family;
92 unsigned long address; /* Address IPv4 style. */
93 #ifdef IPV6
94 struct addrinfo *ai; /* Address IPv6 style. */
95 #endif
96 };
97
98 static tree234 *sktree;
99
100 static int cmpfortree(void *av, void *bv)
101 {
102 Actual_Socket a = (Actual_Socket) av, b = (Actual_Socket) bv;
103 unsigned long as = (unsigned long) a->s, bs = (unsigned long) b->s;
104 if (as < bs)
105 return -1;
106 if (as > bs)
107 return +1;
108 return 0;
109 }
110
111 static int cmpforsearch(void *av, void *bv)
112 {
113 Actual_Socket b = (Actual_Socket) bv;
114 unsigned long as = (unsigned long) av, bs = (unsigned long) b->s;
115 if (as < bs)
116 return -1;
117 if (as > bs)
118 return +1;
119 return 0;
120 }
121
122 void sk_init(void)
123 {
124 sktree = newtree234(cmpfortree);
125 }
126
127 void sk_cleanup(void)
128 {
129 Actual_Socket s;
130 int i;
131
132 if (sktree) {
133 for (i = 0; (s = index234(sktree, i)) != NULL; i++) {
134 closesocket(s->s);
135 }
136 }
137 }
138
139 char *winsock_error_string(int error)
140 {
141 switch (error) {
142 case WSAEACCES:
143 return "Network error: Permission denied";
144 case WSAEADDRINUSE:
145 return "Network error: Address already in use";
146 case WSAEADDRNOTAVAIL:
147 return "Network error: Cannot assign requested address";
148 case WSAEAFNOSUPPORT:
149 return
150 "Network error: Address family not supported by protocol family";
151 case WSAEALREADY:
152 return "Network error: Operation already in progress";
153 case WSAECONNABORTED:
154 return "Network error: Software caused connection abort";
155 case WSAECONNREFUSED:
156 return "Network error: Connection refused";
157 case WSAECONNRESET:
158 return "Network error: Connection reset by peer";
159 case WSAEDESTADDRREQ:
160 return "Network error: Destination address required";
161 case WSAEFAULT:
162 return "Network error: Bad address";
163 case WSAEHOSTDOWN:
164 return "Network error: Host is down";
165 case WSAEHOSTUNREACH:
166 return "Network error: No route to host";
167 case WSAEINPROGRESS:
168 return "Network error: Operation now in progress";
169 case WSAEINTR:
170 return "Network error: Interrupted function call";
171 case WSAEINVAL:
172 return "Network error: Invalid argument";
173 case WSAEISCONN:
174 return "Network error: Socket is already connected";
175 case WSAEMFILE:
176 return "Network error: Too many open files";
177 case WSAEMSGSIZE:
178 return "Network error: Message too long";
179 case WSAENETDOWN:
180 return "Network error: Network is down";
181 case WSAENETRESET:
182 return "Network error: Network dropped connection on reset";
183 case WSAENETUNREACH:
184 return "Network error: Network is unreachable";
185 case WSAENOBUFS:
186 return "Network error: No buffer space available";
187 case WSAENOPROTOOPT:
188 return "Network error: Bad protocol option";
189 case WSAENOTCONN:
190 return "Network error: Socket is not connected";
191 case WSAENOTSOCK:
192 return "Network error: Socket operation on non-socket";
193 case WSAEOPNOTSUPP:
194 return "Network error: Operation not supported";
195 case WSAEPFNOSUPPORT:
196 return "Network error: Protocol family not supported";
197 case WSAEPROCLIM:
198 return "Network error: Too many processes";
199 case WSAEPROTONOSUPPORT:
200 return "Network error: Protocol not supported";
201 case WSAEPROTOTYPE:
202 return "Network error: Protocol wrong type for socket";
203 case WSAESHUTDOWN:
204 return "Network error: Cannot send after socket shutdown";
205 case WSAESOCKTNOSUPPORT:
206 return "Network error: Socket type not supported";
207 case WSAETIMEDOUT:
208 return "Network error: Connection timed out";
209 case WSAEWOULDBLOCK:
210 return "Network error: Resource temporarily unavailable";
211 case WSAEDISCON:
212 return "Network error: Graceful shutdown in progress";
213 default:
214 return "Unknown network error";
215 }
216 }
217
218 SockAddr sk_namelookup(char *host, char **canonicalname)
219 {
220 SockAddr ret = smalloc(sizeof(struct SockAddr_tag));
221 unsigned long a;
222 struct hostent *h = NULL;
223 char realhost[8192];
224
225 /* Clear the structure and default to IPv4. */
226 memset(ret, 0, sizeof(struct SockAddr_tag));
227 ret->family = 0; /* We set this one when we have resolved the host. */
228 *realhost = '\0';
229
230 if ((a = inet_addr(host)) == (unsigned long) INADDR_NONE) {
231 #ifdef IPV6
232
233 /* Try to get the getaddrinfo() function from wship6.dll */
234 /* This way one doesn't need to have IPv6 dll's to use PuTTY and
235 * it will fallback to IPv4. */
236 typedef int (CALLBACK * FGETADDRINFO) (const char *nodename,
237 const char *servname,
238 const struct addrinfo *
239 hints,
240 struct addrinfo ** res);
241 FGETADDRINFO fGetAddrInfo = NULL;
242
243 HINSTANCE dllWSHIP6 = LoadLibrary("wship6.dll");
244 if (dllWSHIP6)
245 fGetAddrInfo = (FGETADDRINFO) GetProcAddress(dllWSHIP6,
246 "getaddrinfo");
247
248 /*
249 * Use fGetAddrInfo when it's available (which usually also
250 * means IPv6 is installed...)
251 */
252 if (fGetAddrInfo) {
253 /*debug(("Resolving \"%s\" with getaddrinfo() (IPv4+IPv6 capable)...\n", host)); */
254 if (fGetAddrInfo(host, NULL, NULL, &ret->ai) == 0)
255 ret->family = ret->ai->ai_family;
256 } else
257 #endif
258 {
259 /*
260 * Otherwise use the IPv4-only gethostbyname...
261 * (NOTE: we don't use gethostbyname as a
262 * fallback!)
263 */
264 if (ret->family == 0) {
265 /*debug(("Resolving \"%s\" with gethostbyname() (IPv4 only)...\n", host)); */
266 if ( (h = gethostbyname(host)) )
267 ret->family = AF_INET;
268 }
269 }
270 /*debug(("Done resolving...(family is %d) AF_INET = %d, AF_INET6 = %d\n", ret->family, AF_INET, AF_INET6)); */
271
272 if (ret->family == 0) {
273 DWORD err = WSAGetLastError();
274 ret->error = (err == WSAENETDOWN ? "Network is down" :
275 err ==
276 WSAHOST_NOT_FOUND ? "Host does not exist" : err
277 == WSATRY_AGAIN ? "Host not found" :
278 #ifdef IPV6
279 fGetAddrInfo ? "getaddrinfo: unknown error" :
280 #endif
281 "gethostbyname: unknown error");
282 #ifdef DEBUG
283 {
284 LPVOID lpMsgBuf;
285 FormatMessage(FORMAT_MESSAGE_ALLOCATE_BUFFER |
286 FORMAT_MESSAGE_FROM_SYSTEM |
287 FORMAT_MESSAGE_IGNORE_INSERTS, NULL, err,
288 MAKELANGID(LANG_NEUTRAL, SUBLANG_DEFAULT),
289 (LPTSTR) & lpMsgBuf, 0, NULL);
290 /*debug(("Error %ld: %s (h=%lx)\n", err, lpMsgBuf, h)); */
291 /* Free the buffer. */
292 LocalFree(lpMsgBuf);
293 }
294 #endif
295 } else {
296 ret->error = NULL;
297
298 #ifdef IPV6
299 /* If we got an address info use that... */
300 if (ret->ai) {
301 typedef int (CALLBACK * FGETNAMEINFO)
302 (const struct sockaddr FAR * sa, socklen_t salen,
303 char FAR * host, size_t hostlen, char FAR * serv,
304 size_t servlen, int flags);
305 FGETNAMEINFO fGetNameInfo = NULL;
306
307 /* Are we in IPv4 fallback mode? */
308 /* We put the IPv4 address into the a variable so we can further-on use the IPv4 code... */
309 if (ret->family == AF_INET)
310 memcpy(&a,
311 (char *) &((SOCKADDR_IN *) ret->ai->
312 ai_addr)->sin_addr, sizeof(a));
313
314 /* Now let's find that canonicalname... */
315 if ((dllWSHIP6)
316 && (fGetNameInfo =
317 (FGETNAMEINFO) GetProcAddress(dllWSHIP6,
318 "getnameinfo"))) {
319 if (fGetNameInfo
320 ((struct sockaddr *) ret->ai->ai_addr,
321 ret->family ==
322 AF_INET ? sizeof(SOCKADDR_IN) :
323 sizeof(SOCKADDR_IN6), realhost,
324 sizeof(realhost), NULL, 0, 0) != 0) {
325 strncpy(realhost, host, sizeof(realhost));
326 }
327 }
328 }
329 /* We used the IPv4-only gethostbyname()... */
330 else
331 #endif
332 {
333 memcpy(&a, h->h_addr, sizeof(a));
334 /* This way we are always sure the h->h_name is valid :) */
335 strncpy(realhost, h->h_name, sizeof(realhost));
336 }
337 }
338 #ifdef IPV6
339 FreeLibrary(dllWSHIP6);
340 #endif
341 } else {
342 /*
343 * This must be a numeric IPv4 address because it caused a
344 * success return from inet_addr.
345 */
346 ret->family = AF_INET;
347 strncpy(realhost, host, sizeof(realhost));
348 }
349 ret->address = ntohl(a);
350 realhost[lenof(realhost)-1] = '\0';
351 *canonicalname = smalloc(1+strlen(realhost));
352 strcpy(*canonicalname, realhost);
353 return ret;
354 }
355
356 void sk_getaddr(SockAddr addr, char *buf, int buflen)
357 {
358 #ifdef IPV6
359 if (addr->family == AF_INET) {
360 #endif
361 struct in_addr a;
362 a.s_addr = htonl(addr->address);
363 strncpy(buf, inet_ntoa(a), buflen);
364 #ifdef IPV6
365 } else {
366 FIXME; /* I don't know how to get a text form of an IPv6 address. */
367 }
368 #endif
369 }
370
371 void sk_addr_free(SockAddr addr)
372 {
373 sfree(addr);
374 }
375
376 static Plug sk_tcp_plug(Socket sock, Plug p)
377 {
378 Actual_Socket s = (Actual_Socket) sock;
379 Plug ret = s->plug;
380 if (p)
381 s->plug = p;
382 return ret;
383 }
384
385 static void sk_tcp_flush(Socket s)
386 {
387 /*
388 * We send data to the socket as soon as we can anyway,
389 * so we don't need to do anything here. :-)
390 */
391 }
392
393 static void sk_tcp_close(Socket s);
394 static int sk_tcp_write(Socket s, char *data, int len);
395 static int sk_tcp_write_oob(Socket s, char *data, int len);
396 static void sk_tcp_set_private_ptr(Socket s, void *ptr);
397 static void *sk_tcp_get_private_ptr(Socket s);
398 static void sk_tcp_set_frozen(Socket s, int is_frozen);
399 static char *sk_tcp_socket_error(Socket s);
400
401 extern char *do_select(SOCKET skt, int startup);
402
403 Socket sk_register(void *sock, Plug plug)
404 {
405 static struct socket_function_table fn_table = {
406 sk_tcp_plug,
407 sk_tcp_close,
408 sk_tcp_write,
409 sk_tcp_write_oob,
410 sk_tcp_flush,
411 sk_tcp_set_private_ptr,
412 sk_tcp_get_private_ptr,
413 sk_tcp_set_frozen,
414 sk_tcp_socket_error
415 };
416
417 DWORD err;
418 char *errstr;
419 Actual_Socket ret;
420
421 /*
422 * Create Socket structure.
423 */
424 ret = smalloc(sizeof(struct Socket_tag));
425 ret->fn = &fn_table;
426 ret->error = NULL;
427 ret->plug = plug;
428 bufchain_init(&ret->output_data);
429 ret->writable = 1; /* to start with */
430 ret->sending_oob = 0;
431 ret->frozen = 1;
432 ret->frozen_readable = 0;
433 ret->localhost_only = 0; /* unused, but best init anyway */
434 ret->pending_error = 0;
435
436 ret->s = (SOCKET)sock;
437
438 if (ret->s == INVALID_SOCKET) {
439 err = WSAGetLastError();
440 ret->error = winsock_error_string(err);
441 return (Socket) ret;
442 }
443
444 ret->oobinline = 0;
445
446 /* Set up a select mechanism. This could be an AsyncSelect on a
447 * window, or an EventSelect on an event object. */
448 errstr = do_select(ret->s, 1);
449 if (errstr) {
450 ret->error = errstr;
451 return (Socket) ret;
452 }
453
454 add234(sktree, ret);
455
456 return (Socket) ret;
457 }
458
459 Socket sk_new(SockAddr addr, int port, int privport, int oobinline,
460 int nodelay, Plug plug)
461 {
462 static struct socket_function_table fn_table = {
463 sk_tcp_plug,
464 sk_tcp_close,
465 sk_tcp_write,
466 sk_tcp_write_oob,
467 sk_tcp_flush,
468 sk_tcp_set_private_ptr,
469 sk_tcp_get_private_ptr,
470 sk_tcp_set_frozen,
471 sk_tcp_socket_error
472 };
473
474 SOCKET s;
475 #ifdef IPV6
476 SOCKADDR_IN6 a6;
477 #endif
478 SOCKADDR_IN a;
479 DWORD err;
480 char *errstr;
481 Actual_Socket ret;
482 short localport;
483
484 /*
485 * Create Socket structure.
486 */
487 ret = smalloc(sizeof(struct Socket_tag));
488 ret->fn = &fn_table;
489 ret->error = NULL;
490 ret->plug = plug;
491 bufchain_init(&ret->output_data);
492 ret->connected = 0; /* to start with */
493 ret->writable = 0; /* to start with */
494 ret->sending_oob = 0;
495 ret->frozen = 0;
496 ret->frozen_readable = 0;
497 ret->localhost_only = 0; /* unused, but best init anyway */
498 ret->pending_error = 0;
499
500 /*
501 * Open socket.
502 */
503 s = socket(addr->family, SOCK_STREAM, 0);
504 ret->s = s;
505
506 if (s == INVALID_SOCKET) {
507 err = WSAGetLastError();
508 ret->error = winsock_error_string(err);
509 return (Socket) ret;
510 }
511
512 ret->oobinline = oobinline;
513 if (oobinline) {
514 BOOL b = TRUE;
515 setsockopt(s, SOL_SOCKET, SO_OOBINLINE, (void *) &b, sizeof(b));
516 }
517
518 if (nodelay) {
519 BOOL b = TRUE;
520 setsockopt(s, IPPROTO_TCP, TCP_NODELAY, (void *) &b, sizeof(b));
521 }
522
523 /*
524 * Bind to local address.
525 */
526 if (privport)
527 localport = 1023; /* count from 1023 downwards */
528 else
529 localport = 0; /* just use port 0 (ie winsock picks) */
530
531 /* Loop round trying to bind */
532 while (1) {
533 int retcode;
534
535 #ifdef IPV6
536 if (addr->family == AF_INET6) {
537 memset(&a6, 0, sizeof(a6));
538 a6.sin6_family = AF_INET6;
539 /*a6.sin6_addr = in6addr_any; *//* == 0 */
540 a6.sin6_port = htons(localport);
541 } else
542 #endif
543 {
544 a.sin_family = AF_INET;
545 a.sin_addr.s_addr = htonl(INADDR_ANY);
546 a.sin_port = htons(localport);
547 }
548 #ifdef IPV6
549 retcode = bind(s, (addr->family == AF_INET6 ?
550 (struct sockaddr *) &a6 :
551 (struct sockaddr *) &a),
552 (addr->family ==
553 AF_INET6 ? sizeof(a6) : sizeof(a)));
554 #else
555 retcode = bind(s, (struct sockaddr *) &a, sizeof(a));
556 #endif
557 if (retcode != SOCKET_ERROR) {
558 err = 0;
559 break; /* done */
560 } else {
561 err = WSAGetLastError();
562 if (err != WSAEADDRINUSE) /* failed, for a bad reason */
563 break;
564 }
565
566 if (localport == 0)
567 break; /* we're only looping once */
568 localport--;
569 if (localport == 0)
570 break; /* we might have got to the end */
571 }
572
573 if (err) {
574 ret->error = winsock_error_string(err);
575 return (Socket) ret;
576 }
577
578 /*
579 * Connect to remote address.
580 */
581 #ifdef IPV6
582 if (addr->family == AF_INET6) {
583 memset(&a, 0, sizeof(a));
584 a6.sin6_family = AF_INET6;
585 a6.sin6_port = htons((short) port);
586 a6.sin6_addr =
587 ((struct sockaddr_in6 *) addr->ai->ai_addr)->sin6_addr;
588 } else
589 #endif
590 {
591 a.sin_family = AF_INET;
592 a.sin_addr.s_addr = htonl(addr->address);
593 a.sin_port = htons((short) port);
594 }
595
596 /* Set up a select mechanism. This could be an AsyncSelect on a
597 * window, or an EventSelect on an event object. */
598 errstr = do_select(s, 1);
599 if (errstr) {
600 ret->error = errstr;
601 return (Socket) ret;
602 }
603
604 if ((
605 #ifdef IPV6
606 connect(s, ((addr->family == AF_INET6) ?
607 (struct sockaddr *) &a6 : (struct sockaddr *) &a),
608 (addr->family == AF_INET6) ? sizeof(a6) : sizeof(a))
609 #else
610 connect(s, (struct sockaddr *) &a, sizeof(a))
611 #endif
612 ) == SOCKET_ERROR) {
613 err = WSAGetLastError();
614 /*
615 * We expect a potential EWOULDBLOCK here, because the
616 * chances are the front end has done a select for
617 * FD_CONNECT, so that connect() will complete
618 * asynchronously.
619 */
620 if ( err != WSAEWOULDBLOCK ) {
621 ret->error = winsock_error_string(err);
622 return (Socket) ret;
623 }
624 } else {
625 /*
626 * If we _don't_ get EWOULDBLOCK, the connect has completed
627 * and we should set the socket as writable.
628 */
629 ret->writable = 1;
630 }
631
632 add234(sktree, ret);
633
634 return (Socket) ret;
635 }
636
637 Socket sk_newlistener(int port, Plug plug, int local_host_only)
638 {
639 static struct socket_function_table fn_table = {
640 sk_tcp_plug,
641 sk_tcp_close,
642 sk_tcp_write,
643 sk_tcp_write_oob,
644 sk_tcp_flush,
645 sk_tcp_set_private_ptr,
646 sk_tcp_get_private_ptr,
647 sk_tcp_set_frozen,
648 sk_tcp_socket_error
649 };
650
651 SOCKET s;
652 #ifdef IPV6
653 SOCKADDR_IN6 a6;
654 #endif
655 SOCKADDR_IN a;
656 DWORD err;
657 char *errstr;
658 Actual_Socket ret;
659 int retcode;
660 int on = 1;
661
662 /*
663 * Create Socket structure.
664 */
665 ret = smalloc(sizeof(struct Socket_tag));
666 ret->fn = &fn_table;
667 ret->error = NULL;
668 ret->plug = plug;
669 bufchain_init(&ret->output_data);
670 ret->writable = 0; /* to start with */
671 ret->sending_oob = 0;
672 ret->frozen = 0;
673 ret->frozen_readable = 0;
674 ret->localhost_only = local_host_only;
675 ret->pending_error = 0;
676
677 /*
678 * Open socket.
679 */
680 s = socket(AF_INET, SOCK_STREAM, 0);
681 ret->s = s;
682
683 if (s == INVALID_SOCKET) {
684 err = WSAGetLastError();
685 ret->error = winsock_error_string(err);
686 return (Socket) ret;
687 }
688
689 ret->oobinline = 0;
690
691
692 setsockopt(s, SOL_SOCKET, SO_REUSEADDR, (const char *)&on, sizeof(on));
693
694
695 #ifdef IPV6
696 if (addr->family == AF_INET6) {
697 memset(&a6, 0, sizeof(a6));
698 a6.sin6_family = AF_INET6;
699 if (local_host_only)
700 a6.sin6_addr = in6addr_loopback;
701 else
702 a6.sin6_addr = in6addr_any;
703 a6.sin6_port = htons(port);
704 } else
705 #endif
706 {
707 a.sin_family = AF_INET;
708 if (local_host_only)
709 a.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
710 else
711 a.sin_addr.s_addr = htonl(INADDR_ANY);
712 a.sin_port = htons((short)port);
713 }
714 #ifdef IPV6
715 retcode = bind(s, (addr->family == AF_INET6 ?
716 (struct sockaddr *) &a6 :
717 (struct sockaddr *) &a),
718 (addr->family ==
719 AF_INET6 ? sizeof(a6) : sizeof(a)));
720 #else
721 retcode = bind(s, (struct sockaddr *) &a, sizeof(a));
722 #endif
723 if (retcode != SOCKET_ERROR) {
724 err = 0;
725 } else {
726 err = WSAGetLastError();
727 }
728
729 if (err) {
730 ret->error = winsock_error_string(err);
731 return (Socket) ret;
732 }
733
734
735 if (listen(s, SOMAXCONN) == SOCKET_ERROR) {
736 closesocket(s);
737 ret->error = winsock_error_string(err);
738 return (Socket) ret;
739 }
740
741 /* Set up a select mechanism. This could be an AsyncSelect on a
742 * window, or an EventSelect on an event object. */
743 errstr = do_select(s, 1);
744 if (errstr) {
745 ret->error = errstr;
746 return (Socket) ret;
747 }
748
749 add234(sktree, ret);
750
751 return (Socket) ret;
752 }
753
754 static void sk_tcp_close(Socket sock)
755 {
756 extern char *do_select(SOCKET skt, int startup);
757 Actual_Socket s = (Actual_Socket) sock;
758
759 del234(sktree, s);
760 do_select(s->s, 0);
761 closesocket(s->s);
762 sfree(s);
763 }
764
765 /*
766 * The function which tries to send on a socket once it's deemed
767 * writable.
768 */
769 void try_send(Actual_Socket s)
770 {
771 while (s->sending_oob || bufchain_size(&s->output_data) > 0) {
772 int nsent;
773 DWORD err;
774 void *data;
775 int len, urgentflag;
776
777 if (s->sending_oob) {
778 urgentflag = MSG_OOB;
779 len = s->sending_oob;
780 data = &s->oobdata;
781 } else {
782 urgentflag = 0;
783 bufchain_prefix(&s->output_data, &data, &len);
784 }
785 nsent = send(s->s, data, len, urgentflag);
786 noise_ultralight(nsent);
787 if (nsent <= 0) {
788 err = (nsent < 0 ? WSAGetLastError() : 0);
789 if ((err < WSABASEERR && nsent < 0) || err == WSAEWOULDBLOCK) {
790 /*
791 * Perfectly normal: we've sent all we can for the moment.
792 *
793 * (Some WinSock send() implementations can return
794 * <0 but leave no sensible error indication -
795 * WSAGetLastError() is called but returns zero or
796 * a small number - so we check that case and treat
797 * it just like WSAEWOULDBLOCK.)
798 */
799 s->writable = FALSE;
800 return;
801 } else if (nsent == 0 ||
802 err == WSAECONNABORTED || err == WSAECONNRESET) {
803 /*
804 * If send() returns CONNABORTED or CONNRESET, we
805 * unfortunately can't just call plug_closing(),
806 * because it's quite likely that we're currently
807 * _in_ a call from the code we'd be calling back
808 * to, so we'd have to make half the SSH code
809 * reentrant. Instead we flag a pending error on
810 * the socket, to be dealt with (by calling
811 * plug_closing()) at some suitable future moment.
812 */
813 s->pending_error = err;
814 return;
815 } else {
816 logevent(winsock_error_string(err));
817 fatalbox("%s", winsock_error_string(err));
818 }
819 } else {
820 if (s->sending_oob) {
821 if (nsent < len) {
822 memmove(s->oobdata, s->oobdata+nsent, len-nsent);
823 s->sending_oob = len - nsent;
824 } else {
825 s->sending_oob = 0;
826 }
827 } else {
828 bufchain_consume(&s->output_data, nsent);
829 }
830 }
831 }
832 }
833
834 static int sk_tcp_write(Socket sock, char *buf, int len)
835 {
836 Actual_Socket s = (Actual_Socket) sock;
837
838 /*
839 * Add the data to the buffer list on the socket.
840 */
841 bufchain_add(&s->output_data, buf, len);
842
843 /*
844 * Now try sending from the start of the buffer list.
845 */
846 if (s->writable)
847 try_send(s);
848
849 return bufchain_size(&s->output_data);
850 }
851
852 static int sk_tcp_write_oob(Socket sock, char *buf, int len)
853 {
854 Actual_Socket s = (Actual_Socket) sock;
855
856 /*
857 * Replace the buffer list on the socket with the data.
858 */
859 bufchain_clear(&s->output_data);
860 assert(len <= sizeof(s->oobdata));
861 memcpy(s->oobdata, buf, len);
862 s->sending_oob = len;
863
864 /*
865 * Now try sending from the start of the buffer list.
866 */
867 if (s->writable)
868 try_send(s);
869
870 return s->sending_oob;
871 }
872
873 int select_result(WPARAM wParam, LPARAM lParam)
874 {
875 int ret, open;
876 DWORD err;
877 char buf[20480]; /* nice big buffer for plenty of speed */
878 Actual_Socket s;
879 u_long atmark;
880
881 /* wParam is the socket itself */
882 s = find234(sktree, (void *) wParam, cmpforsearch);
883 if (!s)
884 return 1; /* boggle */
885
886 if ((err = WSAGETSELECTERROR(lParam)) != 0) {
887 /*
888 * An error has occurred on this socket. Pass it to the
889 * plug.
890 */
891 return plug_closing(s->plug, winsock_error_string(err), err, 0);
892 }
893
894 noise_ultralight(lParam);
895
896 switch (WSAGETSELECTEVENT(lParam)) {
897 case FD_CONNECT:
898 s->connected = s->writable = 1;
899 break;
900 case FD_READ:
901 /* In the case the socket is still frozen, we don't even bother */
902 if (s->frozen) {
903 s->frozen_readable = 1;
904 break;
905 }
906
907 /*
908 * We have received data on the socket. For an oobinline
909 * socket, this might be data _before_ an urgent pointer,
910 * in which case we send it to the back end with type==1
911 * (data prior to urgent).
912 */
913 if (s->oobinline) {
914 atmark = 1;
915 ioctlsocket(s->s, SIOCATMARK, &atmark);
916 /*
917 * Avoid checking the return value from ioctlsocket(),
918 * on the grounds that some WinSock wrappers don't
919 * support it. If it does nothing, we get atmark==1,
920 * which is equivalent to `no OOB pending', so the
921 * effect will be to non-OOB-ify any OOB data.
922 */
923 } else
924 atmark = 1;
925
926 ret = recv(s->s, buf, sizeof(buf), 0);
927 noise_ultralight(ret);
928 if (ret < 0) {
929 err = WSAGetLastError();
930 if (err == WSAEWOULDBLOCK) {
931 break;
932 }
933 }
934 if (ret < 0) {
935 return plug_closing(s->plug, winsock_error_string(err), err,
936 0);
937 } else if (0 == ret) {
938 return plug_closing(s->plug, NULL, 0, 0);
939 } else {
940 return plug_receive(s->plug, atmark ? 0 : 1, buf, ret);
941 }
942 break;
943 case FD_OOB:
944 /*
945 * This will only happen on a non-oobinline socket. It
946 * indicates that we can immediately perform an OOB read
947 * and get back OOB data, which we will send to the back
948 * end with type==2 (urgent data).
949 */
950 ret = recv(s->s, buf, sizeof(buf), MSG_OOB);
951 noise_ultralight(ret);
952 if (ret <= 0) {
953 char *str = (ret == 0 ? "Internal networking trouble" :
954 winsock_error_string(WSAGetLastError()));
955 logevent(str);
956 fatalbox("%s", str);
957 } else {
958 return plug_receive(s->plug, 2, buf, ret);
959 }
960 break;
961 case FD_WRITE:
962 {
963 int bufsize_before, bufsize_after;
964 s->writable = 1;
965 bufsize_before = s->sending_oob + bufchain_size(&s->output_data);
966 try_send(s);
967 bufsize_after = s->sending_oob + bufchain_size(&s->output_data);
968 if (bufsize_after < bufsize_before)
969 plug_sent(s->plug, bufsize_after);
970 }
971 break;
972 case FD_CLOSE:
973 /* Signal a close on the socket. First read any outstanding data. */
974 open = 1;
975 do {
976 ret = recv(s->s, buf, sizeof(buf), 0);
977 if (ret < 0) {
978 err = WSAGetLastError();
979 if (err == WSAEWOULDBLOCK)
980 break;
981 return plug_closing(s->plug, winsock_error_string(err),
982 err, 0);
983 } else {
984 if (ret)
985 open &= plug_receive(s->plug, 0, buf, ret);
986 else
987 open &= plug_closing(s->plug, NULL, 0, 0);
988 }
989 } while (ret > 0);
990 return open;
991 case FD_ACCEPT:
992 {
993 struct sockaddr_in isa;
994 int addrlen = sizeof(struct sockaddr_in);
995 SOCKET t; /* socket of connection */
996
997 memset(&isa, 0, sizeof(struct sockaddr_in));
998 err = 0;
999 t = accept(s->s,(struct sockaddr *)&isa,&addrlen);
1000 if (t == INVALID_SOCKET)
1001 {
1002 err = WSAGetLastError();
1003 if (err == WSATRY_AGAIN)
1004 break;
1005 }
1006
1007 if (s->localhost_only &&
1008 ntohl(isa.sin_addr.s_addr) != INADDR_LOOPBACK) {
1009 closesocket(t); /* dodgy WinSock let nonlocal through */
1010 } else if (plug_accepting(s->plug, (void*)t)) {
1011 closesocket(t); /* denied or error */
1012 }
1013 }
1014 }
1015
1016 return 1;
1017 }
1018
1019 /*
1020 * Deal with socket errors detected in try_send().
1021 */
1022 void net_pending_errors(void)
1023 {
1024 int i;
1025 Actual_Socket s;
1026
1027 /*
1028 * This might be a fiddly business, because it's just possible
1029 * that handling a pending error on one socket might cause
1030 * others to be closed. (I can't think of any reason this might
1031 * happen in current SSH implementation, but to maintain
1032 * generality of this network layer I'll assume the worst.)
1033 *
1034 * So what we'll do is search the socket list for _one_ socket
1035 * with a pending error, and then handle it, and then search
1036 * the list again _from the beginning_. Repeat until we make a
1037 * pass with no socket errors present. That way we are
1038 * protected against the socket list changing under our feet.
1039 */
1040
1041 do {
1042 for (i = 0; (s = index234(sktree, i)) != NULL; i++) {
1043 if (s->pending_error) {
1044 /*
1045 * An error has occurred on this socket. Pass it to the
1046 * plug.
1047 */
1048 plug_closing(s->plug,
1049 winsock_error_string(s->pending_error),
1050 s->pending_error, 0);
1051 break;
1052 }
1053 }
1054 } while (s);
1055 }
1056
1057 /*
1058 * Each socket abstraction contains a `void *' private field in
1059 * which the client can keep state.
1060 */
1061 static void sk_tcp_set_private_ptr(Socket sock, void *ptr)
1062 {
1063 Actual_Socket s = (Actual_Socket) sock;
1064 s->private_ptr = ptr;
1065 }
1066
1067 static void *sk_tcp_get_private_ptr(Socket sock)
1068 {
1069 Actual_Socket s = (Actual_Socket) sock;
1070 return s->private_ptr;
1071 }
1072
1073 /*
1074 * Special error values are returned from sk_namelookup and sk_new
1075 * if there's a problem. These functions extract an error message,
1076 * or return NULL if there's no problem.
1077 */
1078 char *sk_addr_error(SockAddr addr)
1079 {
1080 return addr->error;
1081 }
1082 static char *sk_tcp_socket_error(Socket sock)
1083 {
1084 Actual_Socket s = (Actual_Socket) sock;
1085 return s->error;
1086 }
1087
1088 static void sk_tcp_set_frozen(Socket sock, int is_frozen)
1089 {
1090 Actual_Socket s = (Actual_Socket) sock;
1091 if (s->frozen == is_frozen)
1092 return;
1093 s->frozen = is_frozen;
1094 if (!is_frozen && s->frozen_readable) {
1095 char c;
1096 recv(s->s, &c, 1, MSG_PEEK);
1097 }
1098 s->frozen_readable = 0;
1099 }
1100
1101 /*
1102 * For Plink: enumerate all sockets currently active.
1103 */
1104 SOCKET first_socket(int *state)
1105 {
1106 Actual_Socket s;
1107 *state = 0;
1108 s = index234(sktree, (*state)++);
1109 return s ? s->s : INVALID_SOCKET;
1110 }
1111
1112 SOCKET next_socket(int *state)
1113 {
1114 Actual_Socket s = index234(sktree, (*state)++);
1115 return s ? s->s : INVALID_SOCKET;
1116 }